Claims
- 1. A magnetic recording head comprising:
(a) a substrate having a coefficient of thermal expansion; (b) a read sensor; and (c) at least one shield positioned adjacent said read sensor, wherein said shield contributes to thermal pole-tip recession in an amount less than about 0.4 Å/° C.
- 2. The magnetic recording head of claim 1, wherein said contribution to thermal pole-tip recession is less than about 0.3 Å/° C.
- 3. The magnetic recording head of claim 1, wherein said at least one shield has a coefficient of thermal expansion within ±2×10−6/° C. of the coefficient of thermal expansion of said substrate.
- 4. The magnetic recording head of claim 3, wherein said substrate is chosen from the group consisting of AlTiC and silicon.
- 5. The magnetic recording head of claim 4, wherein said substrate is AlTiC.
- 6. The magnetic recording head of claim 5, wherein said at least one shield has a coefficient of thermal expansion of about 8×10−6/° C. to about 6×10−6/° C.
- 7. The magnetic recording head of claim 6, wherein said at least one shield comprises: a nickel iron alloy, a nickel cobalt iron alloy, or combinations thereof.
- 8. The magnetic recording head of claim 7, wherein said at least one shield comprises a nickel iron alloy.
- 9. The magnetic recording head of claim 8, wherein said nickel iron alloy has about 31 to about 32.5% nickel, or about 42 to about 45% nickel.
- 10. The magnetic recording head of claim 9, wherein said nickel iron alloy is a 31.5% nickel, 68.5% iron alloy or a 45% nickel, 55% iron alloy.
- 11. The magnetic recording head of claim 7, wherein said at least one shield comprises a nickel cobalt iron alloy.
- 12. The magnetic recording head of claim 11, wherein said nickel cobalt iron alloy is chosen from the group consisting of: a nickel cobalt iron alloy having a composition of about 21 to 24% nickel, about 20% cobalt, about 56 to 59% iron, a nickel cobalt iron alloy having a composition of about 24.3 to 26.6% nickel, about 10% cobalt, about 63.6% iron, and a nickel cobalt iron alloy having a composition of about 30 to 34% nickel, about 10% cobalt, about 55 to 59% iron.
- 13. The magnetic recording head of claim 4, wherein said at least one shield has a coefficient of thermal expansion of between about 1.3×10−6/° C. and about 3.9×10−6/° C.
- 14. The magnetic recording head of claim 13, wherein said at least one shield is chosen from the group consisting of a nickel iron alloy with about 32 to about 40% nickel and a nickel cobalt iron alloy with about 26 to about 29% nickel and about 10% cobalt.
- 15. The magnetic recording head of claim 7, wherein said at least one shield further comprises at least one additional element that decreases the coefficient of thermal expansion of the shield.
- 16. The magnetic recording head of claim 15, wherein said additional element is chosen from the group consisting of: tungsten, molybdenum, chromium, osmium, zirconium, hafnium, boron, germanium, tantalum, cerium, ruthenium, iridium, and combinations thereof.
- 17. The magnetic recording head of claim 16, wherein said additional element comprises chromium.
- 18. The magnetic recording head of claim 1, wherein said at least one shield has a thickness of less than about 0.5 μm.
- 19. The magnetic recording head of claim 18, wherein said thickness is between about 0.05 μm and about 0.5 μm.
- 20. The magnetic recording head of claim 19, wherein said shield comprises an 80% nickel, 20% iron alloy, or Sendust.
- 21. A magnetic recording head comprising:
(a) a substrate having a coefficient of thermal expansion; (b) a read sensor; and (c) at least one shield positioned adjacent said read sensor, wherein said shield has a coefficient of thermal expansion within ±2×10−6/° C. of the coefficient of thermal expansion of said substrate.
- 22. The magnetic recording head of claim 21, wherein said substrate is chosen from the group consisting of AlTiC and silicon.
- 23. The magnetic recording head of claim 22, wherein said substrate is AlTiC.
- 24. The magnetic recording head of claim 23, wherein said at least one shield has a coefficient of thermal expansion of between about 8×10−6/° C. and about 6×10−6/° C.
- 25. The magnetic recording head of claim 24, wherein said at least one shield comprises: a nickel iron alloy or a nickel cobalt iron alloy.
- 26. The magnetic recording head of claim 25, wherein said nickel iron alloy has about 31 to 32.5% nickel or about 42 to 45% nickel.
- 27. The magnetic recording head of claim 26, wherein said nickel iron alloy is a 31.5% nickel, 68.5% iron alloy or a 45% nickel, 55% iron alloy.
- 28. The magnetic recording head of claim 25, wherein said at least one shield comprises a nickel iron cobalt alloy.
- 29. The magnetic recording head of claim 28, wherein said nickel cobalt iron alloy is chosen from the group consisting of: a nickel cobalt iron alloy having a composition of about 21 to 24% nickel, about 20% cobalt, about 56 to 59% iron, a nickel cobalt iron alloy having a composition of about 24.3 to 26.6% nickel, about 10% cobalt, about 63.6% iron, and a nickel cobalt iron alloy having a composition of about 30 to 34% nickel, about 10% cobalt, about 55 to 59% iron.
- 30. The magnetic recording head of claim 23, wherein said at least one shield has a coefficient of thermal expansion of between about 1.3×10−6/° C. and about 3.9×10−6/° C.
- 31. The magnetic recording head of claim 30, wherein said at least one shield is chosen from the group consisting of a nickel iron alloy with about 32 to about 40% nickel and a nickel cobalt iron alloy with about 26 to about 29% nickel and about 10% cobalt.
- 32. The magnetic recording head of claim 25, wherein said at least one shield further comprises at least one additional element that decreases the coefficient of thermal expansion of the shield.
- 33. The magnetic recording head of claim 32, wherein said additional element is chosen from the group consisting of: tungsten, molybdenum, chromium, osmium, zirconium, hafnium, boron, germanium, tantalum, cerium, ruthenium, iridium, and combinations thereof.
- 34. The magnetic recording head of claim 33, wherein said additional element comprises chromium.
- 35. A magnetic recording head comprising:
(a) a substrate; (b) a read sensor; and (c) at least one thin shield positioned adjacent said read sensor, wherein said at least one thin shield has a thickness of less than about 0.5 μm, and wherein said at least one thin shield functions to decrease the thermal pole tip recession.
- 36. The magnetic recording head of claim 35, wherein said at least one thin shield has a thickness of between about 0.05 μm and about 0.5 μm.
- 37. The magnetic recording head of claim 36, wherein said shield comprises 80% nickel, 20% iron, or Sendust.
Parent Case Info
[0001] This application claims priority to United States Provisional Application Serial No. 60/335,070 filed on Oct. 26, 2001, entitled “Magnetic Shields for Reduced Variations of Head-Media Spacing”, and United States Provisional Application Serial No. 60/342,238, filed on Dec. 21, 2001, entitled “Reduced TPTR Using Very Thin Shields.”
Provisional Applications (2)
|
Number |
Date |
Country |
|
60335070 |
Oct 2001 |
US |
|
60342238 |
Dec 2001 |
US |